Deciphering transmissivity and hydraulic conductivity of the aquifer by vertical electrical sounding (VES) experiments in Northwest Bangladesh

Springer Science and Business Media LLC - Tập 6 Số 1 - Trang 35-45 - 2016
Golam Shabbir Sattar1, Mumnunul Keramat1, Shamsuddin Shahid2
1Geophysics Laboratory, Department of Applied Physics and Electronics, University of Rajshahi, Rajshahi, 6205, Bangladesh
2Department of Hydraulics and Hydrology, Faculty of Civil Engineering, Universiti Teknologi Malaysia (UTM), 81310, Johor Bahru, Malaysia

Tóm tắt

Từ khóa


Tài liệu tham khảo

Ahamed S, de Marsily G (1987) Comparison of the geophysical methods for estimating transmissivity and specific capacity. Water Resour Res 23:1717–1723

Asaduzzaman M, Rushton KR (2006) Improved yield from aquifers of limited saturated thickness using inverted wells. J Hydrol 326:311–324

Asfahani J (2012) Quaternary aquifer transmissivity derived from vertical electrical sounding measurements in the Semi-Arid Khanasser Valley region. Syria. Acta Geophysica 60(4):1143–1158

Ayers JF (1989) Conjunctive use of geophysical and geological data in the study of an alluvial aquifer. Ground Water 27:625–632

Batte AG, Barifaijo E, Kiberu JM, Kawule W, Muwanga A, Owor M, Kisekulo J (2010) Correlation of geoelectric data with aquifer parameters to delineate the groundwater potential of hard rock terrain in Central Uganda. Pure appl Geophys 167(12):1549–1559

Cassiani G, Medina MA Jr (1997) Incorporating auxiliary geophysical data into groundwater flow parameter estimation. Groundwater 35:79–91

Chachadi AG, Gawas PD (2012) Correlation study between geoelectrical and aquifer parameters in West Coast Laterites. Int J Earth Sci Eng 5(2):282–287

Cooper GRJ (2001) V E S 1.30, Forward modeling and inversion of Schlumberger resistivity soundings for Microsoft Windows. University of the Witwatersrand, Johannesburg, SA

Dasargues A (1997) Modeling base flow from an alluvial aquifer using hydraulic-conductivity data obtained from a derived relation with apparent electrical resistivity. J Hydrogeol 5:97–108

Eden RN, Hazel CP (1973) Computer and graphical analysis of variable discharge pumping test of wells. Inst Eng Australia Civil Eng Trans 15:5–10

Egbai JC (2011) Vertical electrical sounding for the determination of aquifer transmissivity. Aust J Basic Appl Sci 5(6):1209–1214

Ezeh CC (2011) Geoelectrical studies for estimating aquifer hydraulic properties in Enugu State, Nigeria. Int J Phys Sci 6(14):3319–3329

Frohlich RK, Fisher JJ, Summerly E (1996) Electric-hydraulic conductivity correlation in fractured crystalline bedrock, Central Landfill, Rhode Island, USA. J Appl Geophys 35:249–259

Harb N, Haddad K, Farkh S (2010) Calculation of transverse resistance to correct aquifer resistivity of groundwater saturated zones : implications for estimating its hydrogeological properties. Leban Sci J 11(1):105–115

Islami N (2011) Geoelectrical resistivity method for salt/brackish water mapping. J Coast Dev 14(2):104–114

Jahan CS, Mazumder QH, Ghose SK, Asaduzzaman M (1994) Specific yield evaluation: Barind Area, Bangladesh. J Geol Soc India 44:283–290

Kalinski RJ, Kelly WE, Bogardi I, Pesti G (1993) Electrical resistivity measurements to estimate travel times through unsaturated ground water protective layers. J Appl Geophys 30:161–173

Kelly WE, Frohlich RK (1985) Relations between aquifer electrical and hydraulic properties. Ground Water 23:182–189

Khan AA, Akhter SH, Ahmed KM, Hasan MA (2002) VES signature in soft rock groundwater exploration vis-à-vis geoenvironmental implications. In: Sherif et al. (eds) Groundwater hydrology, vol. 2, pp 179–193. Balkema Publishers, Leiden

Kruseman GP, de Ridder NA (1994) Analysis and evaluation of pumping test data, 3rd edn., vol. 11. International Institute for Land Reclamation and Development, Wageningen

Majumdar RK, Das D (2011) Hydrological characterization and estimation of aquifer properties from electrical sounding data in Sagar Island region, South 24 Parganas, West Bengal, India. Asian J Earth Sci 4(2):60–74

Mbonu PDC, Ebeniro JO, Ofoegbu CO, Ekine AS (1991) Geoelectric sounding for the determination of aquifer characteristics in parts of the Umuahia area of Nigeria. Geophysics 56:284–291

Morgan P, McIntire WG (1959) Quaternary geology of Bengal basin. Geol Soc Am Bull 70:319–342

Nath SK, Patra HP, Shahid S (2000) Geophysical prospecting for ground water. Oxford and IBH Publishing, New Delhi

Niwas S, Celik M (2012) Equation estimation of porosity and hydraulic conductivity of Ruhrtal aquifer in Germany using near surface geophysics. J Appl Geophys 84:77–85

Niwas S, De Lima OAL (2006) Correlating electrical and hydraulic conductivity of a general aquifer model: concept and application. J Geol Soc India 67(6):730–736

Niwas S, Singhal DC (1981) Estimation of aquifer transmissivity from Dar-Zarrouk Parameters in Porous Media. J Hydrol 50:393–399

Niwas S, Singhal DC (1985) Aquifer transmissivity of porous media from resistivity data. J Hydrol 82:143–153

Nwosu LI, Nwankwo CN, Ekine AS (2013) Geoelectric investigation of the hydraulic properties of the aquiferous zones for evaluation of groundwater potentials in the complex geological area of imo state, Nigeria. Asian J Earth Sci 6(1):1–15

Onuoha KM, Mbazi FCC (1988) Aquifer transmissivity from electrical sounding data: The case of Ajali Sandstone aquifers, South West of Enugu, Nigeria: Groundwater and mineral resources of Nigeria. Vieweg-Verlag, Wiesbaden, pp 17–30

Patra HP, Nath SK (1999) Schlumberger geoelectric sounding in ground water. Principles, interpretation and applications. Balkema Publishers, Rotterdam, p 153

Ponzini G, Ostroman A, Mollinai M (1984) Empirical relation between electrical transverse resistance and hydraulic transmissivity. Geoexploration 22:1–15

Purvance DT, Andricevic R (2000a) On the electrical-hydraulic conductivity correlation in aquifers. Water Resour Res 36:205–213

Purvance DT, Andricevic R (2000b) Geoelectrical characterization of the hydraulic conductivity field and its spatial structure at variable scales. Water Resour Res 36:215–224

Rashid H (1991) Geography of Bangladesh. Oxford University Press Limited, Dhaka

Sattar GS (2005) Combined analysis of geoelectrical and hydrogeological data for the evaluation of groundwater potentiality in Chapai-Nawabganj area of Bangladesh, Unpublished Ph.D. thesis. University of Rajshahi

Shahid S (2010) Spatial assessment of groundwater demand in Northwestern Bangladesh. Int J Water 5(3):267–283

Shahid S, Hazarika MK (2010) Groundwater droughts in the northwestern districts of Bangladesh. Water Resour Manag 24(10):1989–2006

Shevnin V, Delgado-Rodríguez O, Mousatov A, Ryjov A (2006) Estimation of soil hydraulic conductivity on clay content, determined from resistivity data. Paper presented at the 19th symposium on the application of geophysics to engineering and environmental problems, SAGEEP 2006: geophysical applications for environmental and engineering hazzards—advances and constraints 2:1464–1473

Sikandar P, Christen EW (2012) Geoelectrical sounding for the estimation of hydraulic conductivity of alluvial aquifers. Water Resour Manag 26(5):1201–1215

Singhal DC, Niwas S, Shakeel M, Adam EM (1998) Estimation of hydraulic characteristics of alluvial aquifers from electrical resistivity data. J Geol Soc India 51:461–470

Ugada U, Ibe KK, Akaolisa CZ, Opara AI (2013) Hydrogeophysical evaluation of aquifer hydraulic characteristics using surface geophysical data: a case study of Umuahia and environs, southeastern Nigeria. Arab J Geosci 1–12 (in press)

Yadav GS, Abolfazli A (1998) Geoelectrical soundings and their relationship to hydraulic parameters in semi-arid regions of Jalore, north-western India. J Appl Geophys 39:35–51

Zohdy AAR (1974) Use of Dark Zarrouk curves in the interpretation of vertical electrical sounding data. U.S. Geol Surv Bull 41:1313-D

Zohdy AAR (1975) Automatic interpretation of Schlumberger sounding curves using modified Dark Zarrouk function. U.S. Geol Surv Bull 39:1313-E

Zohdy AAR, Bisdorf RJ (1989) Programs for the automatic processing and interpretation of Schlumberger sounding curves in Quick BASIC 4.0. U.S. Geological Survey Open-File Report, 89–137